Whole-transcriptome analysis of longissimus dorsi muscle in cattle-yaks reveals the regulatory functions of ADAMTS6 gene in myoblasts

转录组 牦牛 基因 骨骼肌 生物 肌发生 心肌细胞 小RNA 基因表达 计算生物学 细胞生物学 遗传学 解剖 动物科学
作者
Chun Huang,Fan Feng,Rongfeng Dai,Wenwen Ren,Xinyi Li,Ta Zhaxi,Xiaoming Ma,Xiaoyun Wu,Min Chen,Yongfu La,Pengjia Bao,Xian Guo,Jie Pei,Ping Yan,Chunnian Liang
出处
期刊:International Journal of Biological Macromolecules [Elsevier]
卷期号:262: 129985-129985
标识
DOI:10.1016/j.ijbiomac.2024.129985
摘要

Cattle-yak, which is the hybrid F1 generation of cattle and yak, demonstrates better production performance compared to yak. However, there is limited research on the molecular mechanisms responsible for the muscle development of cattle-yak. To address this knowledge gap, a comprehensive transcriptomic survey of the longissimus dorsi muscle in cattle-yak was conducted. Three transcript types, namely lncRNAs, miRNAs, and circRNAs, along with protein-coding genes were characterized at two developmental stages (6 m, 18 m) of cattle-yak. The results revealed significant enrichment of these transcripts into pathways related to myoblast differentiation and muscle development signaling. Additionally, the study identified the TCONS00024465/circHIPK3-bta-miR-499-ADAMTS6 regulatory network, which may play a crucial role in the muscle development of cattle-yak by combining the transcriptome data of yak and constructing the ceRNA co-expression network. HEK 293 T cells were used to validate that TCONS00024465 and circHIPK3 are located upstream of bta-miR-499, and can competitively bind to bta-miR-499 as ceRNA. The study also verified that ADAMTS6 regulates skeletal muscle development by inhibiting myoblast proliferation, promoting myoblast differentiation, and positively regulating the apoptosis of myoblasts. Taken together, this study provides new insights into the advantages of cattle-yak production performance and offers a molecular basis for further research on muscle development.
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